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Altered frequency-specific/universal amplitude characteristics of spontaneous brain oscillations in patients with bipolar disorder. | LitMetric

Altered frequency-specific/universal amplitude characteristics of spontaneous brain oscillations in patients with bipolar disorder.

Neuroimage Clin

The National Clinical Research Center for Mental Disorders & Beijing Key Laboratory of Mental Disorders, Beijing Anding Hospital, Capital Medical University, Beijing, China; CAS Key Laboratory of Behavioral Science, Institute of Psychology, Beijing, China; Department of Psychology, University of Chinese Academy of Sciences, Beijing, China. Electronic address:

Published: December 2022

AI Article Synopsis

  • The study investigates how spontaneous neural oscillations in different frequency bands are affected in patients with bipolar disorder compared to healthy controls.
  • Patients with bipolar disorder showed a specific decrease in oscillation amplitudes in lower frequency bands within areas of the brain like the posterior medial parietal cortex, while no changes were found in higher frequency bands.
  • Universal abnormalities were also identified, showing increased oscillation amplitudes in the thalamus and left anterior cerebellum, along with decreased amplitudes in the medial superior frontal gyrus, independent of mood states and consistent across various analyses.

Article Abstract

The human brain is a dynamic system with intrinsic oscillations in spontaneous neural activity. Whether the dynamic characteristics of these spontaneous oscillations are differentially altered across different frequency bands in patients with bipolar disorder (BD) remains unclear. This study recruited 65 patients with BD and 85 healthy controls (HCs). The entire frequency range of resting-state fMRI data was decomposed into four frequency intervals. Two-way repeated-measures ANCOVA was employed to detect frequency-specific/universal alterations in the dynamic oscillation amplitude in BD. The patients were then divided into two subgroups according to their mood states to explore whether these alterations were independent of their mood states. Finally, other window sizes, step sizes, and window types were tested to replicate all analyses. Frequency-specific abnormality of the dynamic oscillation amplitude was detected within the posterior medial parietal cortex (centered at the precuneus extending to the posterior cingulate cortex). This specific profile indicates decreased amplitudes in the lower frequency bands (slow-5/4) and no amplitude changes in the higher frequency bands (slow-3/2) compared with HCs. Frequency-universal abnormalities of the dynamic oscillation amplitude were also detectable, indicating increased amplitudes in the thalamus and left cerebellum anterior lobe but decreased amplitudes in the medial superior frontal gyrus. These alterations were independent of the patients' mood states and replicable across multiple analytic and parametric settings. In short, frequency-specific/universal amplitude characteristics of spontaneous oscillations were observed in patients with BD. These abnormal characteristics have important implications for specific functional changes in BD from multiple frequency and dynamic perspectives.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9668601PMC
http://dx.doi.org/10.1016/j.nicl.2022.103207DOI Listing

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